Photosynthesis: Light Reactions and Photophosphorylation

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  • Опубликовано: 4 окт 2024
  • More detail on the light reactions and photophorylation
    More free lessons at: www.khanacademy...

Комментарии • 209

  • @danbedans5793
    @danbedans5793 3 года назад +70

    I hope those who watched about 7,8,9 and 10 years ago passed well and are
    doing well in their lives.

    • @tehreemazmat2929
      @tehreemazmat2929 2 года назад +7

      Yes, I went on and became a medical doctor. I came back here anyways because I am amazed every day that light is actually the source of all energy on earth.

  • @litashix
    @litashix 13 лет назад +33

    Wow. Thank you so much Sal. Photosynthesis is easy in general bio but in AP we get all specific and i swear i was lost. Ive been watching all your videos on photosynthesis and i feel much better on my understanding on photosynthesis. Im actually interested in learning about it and im fascinated. Your videos are SO MUCH BETTER than books/teachers. Thank you so much.

  • @sabrinadelisfort4085
    @sabrinadelisfort4085 11 лет назад +162

    Those who have disliked are professors who are jelly.

  • @jeanmasiyiwa5136
    @jeanmasiyiwa5136 11 лет назад +53

    This dude right here gets excited.

  • @FireSakura
    @FireSakura 13 лет назад +16

    I would love to meet you in real life to give you a hug. I remember watching you on a local channel explaining what you do in your videos. My father reminded me to check youtube to help me when real people cannot and you have worked wonders. Thank you so much and please don't stop teaching!

  • @Trevman55
    @Trevman55 10 лет назад +277

    Step 1: Don't go to lectures
    Step 2: Make notes from slides that prof posts online
    Step 3: Watch these youtube videos day before the exam
    Step 4: Get 93% on the exam
    WINNING.

    • @Jocalaro
      @Jocalaro 10 лет назад +6

      same here bro

    • @vaibhavc1224
      @vaibhavc1224 10 лет назад +8

      you do this in uni? im doing this in grade 12 bruh

    • @debashishchoudhury4994
      @debashishchoudhury4994 9 лет назад +8

      X DeHaan Solo X I'm watching this at 9th grade bro.

    • @sesamesprite986
      @sesamesprite986 8 лет назад

      +Debashish Choudhury same

    • @RedC0tt0n
      @RedC0tt0n 8 лет назад +33

      +Debashish Choudhury i'm in kindergarden watching this, I plan on having my bachelor's by 9th grade

  • @helenedemol4058
    @helenedemol4058 3 года назад +3

    why do i find this so funny
    it's so cool to see someone who is so passionate and excited about what he's explaining

  • @Ehle1234
    @Ehle1234 11 лет назад +12

    my exam is tomorrow and ive been watching your videos and theyve helped me understand cellular respiration and photosynthesis a ton more

  • @Jpurihella
    @Jpurihella 10 лет назад +118

    He is better than my Bio teacher.

    • @bryannguyen658
      @bryannguyen658 10 лет назад +11

      Yeah, you could say that we all had worst bio teachers

    • @qaisjan123
      @qaisjan123 10 лет назад +2

      Bryan Nguyen true. my bio teacher literally shows us powerpoints and no talking at all.

    • @garathe2
      @garathe2 10 лет назад +14

      i pay 600 dollars for a class which the prof reads off the ppt for 3 hours every week. I go on khan academy and get the same content for free and in less time
      gotta love university

  • @M1sterFancyPants
    @M1sterFancyPants 3 года назад +3

    I'm watching this while in my mother's womb right now. Got 120% on the last exam.

  • @halobed2
    @halobed2 14 лет назад +2

    God bless u khanaacademy
    greets from a medical student from Kosovo

  • @aniyeats
    @aniyeats 10 лет назад +54

    Correct me if I'm wrong but I don't think there is involvement of Photosystem 2 in cyclic photophosphorylation. Electrons flow from plastoquinone to cyt b/f to plastocyanin, then reduce ferredoxin through light driven PS1.

    • @dustinsmith8341
      @dustinsmith8341 6 лет назад +5

      That's how I was taught.

    • @dustinsmith8341
      @dustinsmith8341 6 лет назад +12

      Both photosystem 1 and 2 push electrons through cyt b6/f. The Cyt b6/f complex is what generates the H+ Gradient. The only difference is that In noncyclic phosphorylation the Electrons come from water(oxidizing it to O2), through Photosystem 2, then through CytB6/f, then through Photosystem 1, and ultimately it ends up in NADPH. In Cyclic phosphorylation, the electrons come from photosystem 1 and NEED to be returned to photosystem 1. PS1 takes energized electrons and pushes them through the Cyt complex and then it is returned to PS1 to be re-energized(by photons).

    • @dustinsmith8341
      @dustinsmith8341 6 лет назад +5

      The hydrogens are pumped from the stroma into the lumen using the energy in the electrons. When the electrons are in PS1, they are energized by photons. The energized electons get passed to Cyt B. As the electrons go through the Cyt complex it powers the hydrogen pump. As the electrons leave Cyt B they are placed back into PS1 as low energy electrons. Protons are also generated from the oxidation of water in noncyclic phosphorylation. It's very complicated what happens inside of the Cyt complex. (They call it a COMPLEX for a reason! lol)
      The hydrogens come from the stroma and are pumped into the lumen. Once the gradient is formed it powers ATP synthase. ATP synthase only works when Protons are being pumped back into the stroma.

    • @dustinsmith8341
      @dustinsmith8341 6 лет назад +9

      You're welcome! And actually, random protons dont just float around in solution for 2 reasons. 1. The protons are bound to water, H+ is just shorthand for saying H3O+. But thats just symantics. :) And reason 2 is that they arent really random protons. They have to come from somewhere. This means that there is another molecule in your body that is missing a hydrogen and is now negatively charged. This usually has to do with the fact that water will deprotonate carboxylic acids in your body. So, pyruvate, oxolate, succinate, anything ending in ATE used to have a proton attached to it but since it is in contact with water, the water grabs it(forming the H3O+ I mentioned) and creating a carboxylate ion.
      You're right though. There are alot of things that I feel like teachers dont go over that can drastically help in understanding concepts. Part of this might just be because it isn't within the scope of that class to teach that type of information. Like i was watching this video while taking my plant biology course. I understood it moderately. One semester later after taking my senior level Biochemistry course I understand this whole mechanism 100x better because I know what is ACTUALLY happening in all of the complexes and not just a general flow of what is happening.

    • @Sam-2468
      @Sam-2468 5 лет назад

      Good to know!

  • @amariafields3270
    @amariafields3270 Год назад +2

    Please never stop teaching these videos help so much

  • @sym2988
    @sym2988 7 лет назад +1

    I whitelisted your youtube channel on my AdBlock because you're a truly good man

  • @JSanctum
    @JSanctum 9 лет назад +8

    Right after protein Fd (Ferredoxin), there's a NADP+ reductase protein where NADP+ + H+ (proton) helps make NADPH ultimately for use of Calvin Cycle.
    Also, for cyclic photophosphorylation or cyclic electron flow, the proteins involved for the electron transport chain is PS I, Ferredoxin, Cytochrome complex, and Plastocyanin, then back to PS I. I don't think the electron transport chain goes as far back as PS II? We're only concerned about Chorophyll a (P700) in PS I when we're on Cyclic electron flow. Yes, ATP is the product of cyclic electron flow and no NADPH. Thank you for the upload! Glad to review this.

    • @shihvam
      @shihvam 6 месяцев назад

      Yes, in cyclic photophosphorylation PSII is not involved, I guess there's some misunderstanding here

  • @maxiorixor999
    @maxiorixor999 11 лет назад +4

    im not sure if the electrons come back to the PS II in cyclic photophosphorylation. aren't they getting excited in the PS I and then returning to the PS I?

  • @Yurizen001
    @Yurizen001 14 лет назад +3

    i've been growing dependent on your videos sal, thanks alot!

  • @yaldag379
    @yaldag379 6 лет назад +7

    Correction: 16:54 - 17:11
    The cyclic electron flow uses PSI but not PSII... The e- cyclic back from Fd to cytochrome complex from there to P700 in the PSI.

  • @JulzMarie93
    @JulzMarie93 11 лет назад +1

    khan academy......you are the most amazing people.....you have such a good way of explaining things where lecturers talk all complex and it gets really confusing....i really admire what you do and i think i speak for everybody when i say THANK YOU SO MUCH KHAN ACADEMY

  • @Dynorphin7
    @Dynorphin7 11 лет назад +2

    I have a biochem 2 exam in 10 hours. This is helping a lot.

  • @ull893
    @ull893 13 лет назад +5

    Thank you so much Sir, with out your video i would have never understood this. it was so confusing, but now i have a very good understanding. Thanks for getting into the "weeds" because it only helped me more in understanding the process..

  • @spikie2006
    @spikie2006 12 лет назад +1

    if only i could pay as much attention to my teacher as i do to these videos

  • @pariajahadi8738
    @pariajahadi8738 11 месяцев назад

    Thank you so much for existing! I mean that from the very bottom of my heart!

  • @aena_
    @aena_ 3 года назад +2

    Great job!

  • @271093megz
    @271093megz 14 лет назад +7

    AMAZING!! My botany exam doesnt seem so scary anymore :D:D Thanks!

  • @mimuraS1
    @mimuraS1 11 лет назад +2

    god bless khan, god bless eng subs, god bless their makers, god bless everybody in general

  • @Nataarci03
    @Nataarci03 13 лет назад +6

    OMG I hope I pass my test with this sense my textbook is so complicated. Thank you for making this :)

  • @OrdinaryBeastYT
    @OrdinaryBeastYT 11 лет назад +3

    thank you! Cramming for my ap bio exam and every minute is needed haha

  • @undagr0undvibes
    @undagr0undvibes 14 лет назад +1

    @grayshorts You're right. In cyclic photo phosphorylation, the electron skips PS2 and gets circulated back to PS1 by re-entering either the cytochrome complex or plastoquinone.
    Also, I thought the last electron carrier in non-cyclic is ferradoxin, not plastocyanin. Correct me if I'm wrong.

  • @cortisolsoup
    @cortisolsoup 10 лет назад +1

    Super duper helpful. You turned this concept from meaningless gibberish to something I can actually understand and respect

  • @fugger02
    @fugger02 14 лет назад +2

    khan you are a genius, thanks for uploading

  • @nathaliagazaniga2585
    @nathaliagazaniga2585 11 лет назад +2

    You are amazing !!!! I am going to pass my test now

  • @nedok9559
    @nedok9559 4 года назад +1

    I'm as excited as these electrons hit by photons for my exam tomorrow including photosynthesis krebs cycle nitrogen cycle and eveery knowledge you can ever find in the thickest bio books
    Yay

  • @tkh3399
    @tkh3399 11 лет назад +1

    I was so confused at the statement he made on the electrons ending up in P700! Thanks for clarifying!

  • @mangela91
    @mangela91 12 лет назад +1

    Sal, you're my hero

  • @fleshcookie
    @fleshcookie 13 лет назад

    @Sonictriforce Your statement is correct, although you fail to notice that he is talking about Linear Light Reactions, not Cyclic. In the previous video see 13:55.

  • @92msgir
    @92msgir 12 лет назад

    YOUR TEN TIMES BETTER THAN MY PROFESSOR!

  • @kafge7798
    @kafge7798 8 лет назад +13

    he says in cyclic the elctron falls into the PS 2 but doesnt cyclic phosphorylation only invovle PS1??

    • @demolitionman8276
      @demolitionman8276 8 лет назад +1

      True

    • @WelcomeTheDamned
      @WelcomeTheDamned 8 лет назад

      +Tasty Watermelon
      That's true the electron does not fall into ps2 but actually falls to cyt b6
      i still dont get why and when this happens tho

    • @1david12
      @1david12 7 лет назад +4

      I actually paused the video to address this, so many errors in this video *SIGH*

  • @TheCarrotification
    @TheCarrotification 4 года назад +1

    I was under the impression that it is the membrane-bound Fo portion of ATP synthase that spins to release H+ ions back into the stroma. I believe that the F1 portion (in the stroma) was held in place by a separate rigid membrane-bound structure.

  • @dustinnygard3076
    @dustinnygard3076 11 лет назад +1

    Thanks Khan. I love your videos

  • @BE-ho6kz
    @BE-ho6kz 4 года назад +1

    Thank you. That's life saving

  • @Beanaalina
    @Beanaalina 12 лет назад +3

    i love you so much. i really wish you were my teacher.

  • @australiatoengland
    @australiatoengland 13 лет назад +1

    Can someone remind me what the main difference is between how ATP is produced by oxidative phosphorylation in respiration, and how it is produced in photosynthesis?

  • @ziumb
    @ziumb 13 лет назад +1

    although im spanish, i think i couldnt have ever received a better explanation, THANKSS

  • @Altranite
    @Altranite 12 лет назад +2

    The biology version of spark notes and wolfram alpha. Awesome accent included :D

  • @biosandra8773
    @biosandra8773 12 лет назад +1

    very special thank u for ur efforts

  • @arkamcreates
    @arkamcreates 10 лет назад +4

    Great video , understood it fully but are unsure when you say at 16:43 that the electron return to ps11 I think it returns back to ps1 when it's in a lower energy state ? Thanks

  • @darryltaylor3803
    @darryltaylor3803 9 лет назад +2

    Love Khan Academy!

  • @asketchycharacter
    @asketchycharacter 13 лет назад +1

    okay so when the hydrogens are taken off of H20, are those hydrogens already in the lumen or are they in the stroma? if they are already in the lumen, where are the hydrogens in the stroma coming from?

  • @bogdanblazhkevych8678
    @bogdanblazhkevych8678 3 года назад +1

    Crazy how free youtube videos explain the concepts outlined in $100 textbooks better than the professors I pay tens of thousands per semester. College is a scam.

  • @bradsavard8339
    @bradsavard8339 10 лет назад +1

    These videos are soooo helpful thank you!

  • @sciencenerd7639
    @sciencenerd7639 2 года назад

    Thank you Khan academy, I learned a lot!

  • @hannarrRAWR
    @hannarrRAWR 11 лет назад +3

    And now I can pass my biology a-level :D

  • @fm7490
    @fm7490 4 года назад +1

    Hi there, I have a slight doubt. We have told that in both photosistems, photons doesn't excite straightly the chlorophyll a but it is picked by some other pigments or antennas on the outside of the photosistems and then the energy of the photon passes through these complexes of molecules and finally reaches the chlorophyll a in the centre of the photosistems. We have also told that the energy of the photons is transferred from the other pigments to chlorophyll a thanks to resonance energy. Here is my doubt: how does this resonance energy actually work? He said we can immagine it as a vibration but i still have doubts about how actually the resonance occurs. Like so much these videos by the way, great work.

    • @deidara5737
      @deidara5737 2 года назад +1

      Refer to the Resonance video of Khan Academy Organic Chemistry.You'll surely understand the concept from it.

  • @KD1125
    @KD1125 7 лет назад +1

    How many ATP are produced in cyclic photophosphorylation? If two explain me the pathway of ATPs formation.

  • @audreyandremington5265
    @audreyandremington5265 5 лет назад +4

    I like how he called the electron dude.

  • @lysafae
    @lysafae 11 лет назад +1

    Thank you for saving my life!

  • @happflapson
    @happflapson 13 лет назад +1

    You saved me. Thanks so much!

  • @abdulrahmanalhadrami4311
    @abdulrahmanalhadrami4311 6 лет назад +1

    Legend Fam. your real help

  • @MiddleD7
    @MiddleD7 4 года назад +1

    do the H+'s from water also get out from the lumen via the atp synthase?

  • @veloro7
    @veloro7 5 лет назад +1

    At what level is this taught? Secondary schools?

  • @aena_
    @aena_ 3 года назад +2

    Thank you so much!

  • @mishalfatima7019
    @mishalfatima7019 5 лет назад +1

    I have a question , in lumen why water oxidized to form oxygen and protons while water is a highly stable molecule. In other words which force cause water to get oxidized ?? Answer me plzz

  • @dhatb0ijohnny
    @dhatb0ijohnny 13 лет назад

    @whattacock
    OIL acronym means "oxidize is losing"
    RIG acronym means" reduction is gaining"

  • @deathomas3468
    @deathomas3468 12 лет назад +1

    ohhhhh... missed that.. XD thanks.. so basically the electron passing through the transfer chain "merger" with one of the H+ in the stroma and then bond to the NADP+ creating NADPH.... right??

  • @orionarts8478
    @orionarts8478 9 лет назад +1

    How does Light Energy (photons) "excite" electrons? Is there other examples of electrical response to light?

    • @marcusmd114
      @marcusmd114 9 лет назад +1

      Yes, the emitionspectrum. The Northern Light is a good example

  • @MickyTN24
    @MickyTN24 12 лет назад

    I'm a peruvian Student and I lern biology in german. But anyway this video is totally helpful for me. Muchas gracias

  • @samtaubenfeld4405
    @samtaubenfeld4405 11 лет назад

    mr. khan cyclic photophosphrylation does not end up back in PS II - it does end up in the PS II electron transport chain though

  • @TheRedWon
    @TheRedWon 12 лет назад +1

    Great video.

  • @juliusnapoleon8675
    @juliusnapoleon8675 11 лет назад +6

    Ahahahahah "and maybe we can breathe."
    Pun intended?

  • @DeadWombat1421
    @DeadWombat1421 12 лет назад

    Correct me if I'm wrong but I believe that cyclic photophosphorlylation does NOT use Photosystem 2, only Photosystem 1. At 16:50 you draw the electron going back to PS2, but it should go back to PS1.
    Otherwise, great lecture.

  • @yhgne545
    @yhgne545 2 года назад +1

    Sir but ps 2 is not involved in cyclic photophosphorylation

  • @sfathiaazim8364
    @sfathiaazim8364 7 лет назад +1

    I don't think the electron goes to photostream 2 in cyclic photophosphorylation. Does it?

  • @271093megz
    @271093megz 14 лет назад

    @grayshorts This isnt cyclic phosphorylation.Its non-cyclic which does involve PS1 as well as PS2.

  • @gohst9015
    @gohst9015 12 лет назад +1

    what about the oxygen evolving complex?

  • @marklandau365
    @marklandau365 6 лет назад +1

    life saver you are

  • @notbributisbri
    @notbributisbri 11 лет назад +2

    You keep saying "let's recap what we did in the last video" on every video. I can't find the order of these things!

  • @omghihi4417
    @omghihi4417 3 года назад +2

    thank u so much !!!

  • @dyepribudoy
    @dyepribudoy 14 лет назад +1

    I'm not sure but on the cyclic, instead of going back to the photosytem2, isn't it supposed to go back to PQ and not PS2?

  • @FranciscoJxL
    @FranciscoJxL 12 лет назад

    I hope I'm not too late:
    There are actually hydrogens being used in the production of NADPH. The hydrogens used in the NADP+ are in a kind of a cycle, they're being recycled so to speak. They are already in the STROMA, so the NADP+, the e- and the H+ become NADPH with the NADP reductase.
    Hope this helps. Ask if you didn't understand. ^__^

    • @jamesarnold399
      @jamesarnold399 Год назад

      This comment was 10 yrs ago, hope you're doing well! If I may ask, what do you mean by "the hydrogens are in a kind of *cycle* "? Aren't they just floating around the stroma, going with the flow of the concentration gradient?

    • @FranciscoJxL
      @FranciscoJxL Год назад

      @@jamesarnold399 I went and retracted in another comment lmao. I don't remember any of this tbh

    • @jamesarnold399
      @jamesarnold399 Год назад

      @@FranciscoJxL oh- hmm alright then thx

  • @echelontimepieces22
    @echelontimepieces22 10 лет назад +5

    it feels like you're in slow motion

  • @luisdemasiado
    @luisdemasiado 14 лет назад

    someone confused the dislike button with the like button but dont worry, every one can make a mistake, except for the guy who does this videos he is always right

  • @blueinferno2135
    @blueinferno2135 Год назад

    What are the 2 products of cyclic phosphorilization? (Bc we are being asked for 2 products, not just 1)

  • @samiyagimondo8330
    @samiyagimondo8330 4 года назад +2

    I want to meet the face behind this voice 😊

  • @BG-fz2bm
    @BG-fz2bm 4 года назад +1

    i like his drawings

  • @nelmops
    @nelmops 10 лет назад +5

    Are you the voice of Charlie the Unicorn?

  • @deathomas3468
    @deathomas3468 12 лет назад

    i dont understand the part with NADP+ becoming NADPH.. how does the electron make a H?? if it was NADPH+, then it wud make sense... help anyone? but its a superly awesome video...

  • @Nataarci03
    @Nataarci03 13 лет назад

    @Sonictriforce Excuse my ignorance, and I'm sorry if I'm wrong, but my textbook says exactly what the person says in the video. It's a high school textbook so I maybe the authors were trying to make it less complicated for us, but it says so nevertheless. Again, I'm sorry if I'm wrong :)

  • @sharv33n
    @sharv33n 12 лет назад +1

    I heart you.
    Thank you!

  • @leesuey88
    @leesuey88 13 лет назад +1

    @Sonictriforce if electrons go from fd to b6f, then where do the H+ protons get pumped in?
    cuz in a non-cyclic cycle it comes in through PQ right =\

  • @ALLIELx23
    @ALLIELx23 13 лет назад

    So why does the cell use both pathways if they both produce energy?

  • @joshuaharrison9331
    @joshuaharrison9331 7 месяцев назад

    I love that I can watch this now and make corrections ... @13:10 is all wrong. Cytochrome is missing & then its waaaay more complicated than that just 'pumping' H+

  • @norwegiantechnolover
    @norwegiantechnolover 6 лет назад +1

    4:58 any reason as to why he changed color for the remaining names here?

    • @samuelhjelm1
      @samuelhjelm1 5 лет назад

      The ones after Plastoquinone are not part of PSII

  • @sabrinashammas6980
    @sabrinashammas6980 10 лет назад +3

    In Cyclic photophosphorylation, the electrons should end up in Photosytem I NOT two. otherwise great video.

  • @rockediny
    @rockediny 14 лет назад +1

    Thanks!!!!

  • @TheMldytwkr85
    @TheMldytwkr85 2 года назад +1

    Sal for President!

  • @mrturtle55
    @mrturtle55 13 лет назад +1

    every video i've seen so far has one thing in common: OIL RIG

  • @Nataarci03
    @Nataarci03 13 лет назад

    @torresisbeast1 I did pass my test, but my teacher made the test extra hard on purpose (he told us). He started asking all of these application questions that no-one understood. I got all the fact-based things right though (things like 'How are the lost electrons replaced after they are used in Photosystem II?). On top of that, my test was also on Cellular Respiration so it's double trouble lol.

  • @orionarts8478
    @orionarts8478 9 лет назад

    I'm learning. Anyone can answer that knows the answer. How do photons penetrate the Cell wall and stroma to reach the Thylacoid?

    • @yashikaraghuwanshi7634
      @yashikaraghuwanshi7634 8 лет назад

      +Jonathon Shafer
      Photons are electromagnetic radiations or packets of light. These are mass less.
      Consider them like subatomic particles though they are not but size wise. Radiations don't need penetrating.

  • @pahul4
    @pahul4 13 лет назад

    @luisdemasiado Well, sure he's completely right with most of the stuff, but yes, when it comes to cyclic photo phosphorylation, the electron is transferred only in PS1 in a cyclic manner and doesn't even tough PS2 cuz plastocyanin transfers the electron to P700, which further transfers it to FRS, then to ferredoxin, to cyt b6, then to cyt f, back to plastocyanin and again to P700... and this cycle keeps going on, but P680 has absolutely nothing to do with cyclic photo phosphorylation.