Unique features of the plant life cycle and their consequences

被引:119
|
作者
Walbot, V [1 ]
Evans, MMS
机构
[1] Stanford Univ, Dept Biol Sci, Stanford, CA 94305 USA
[2] Carnegie Inst Sci, Dept Plant Biol, Stanford, CA 94305 USA
关键词
D O I
10.1038/nrg1064
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Continuous development, the absence of a germline, flexible and reversible cellular differentiation, and the existence of haploid and diploid generations - both of which express genes - are characteristics that distinguish plants from animals. Because these differences alter the impact of mutations, animals and plants experience varied selection pressures. Despite different life-cycles, both flowering plants and multicellular animals have evolved complex sensing mechanisms that act after fertilization as 'quality checks' on reproduction, and that detect chromosome dosage and the parent of origin for specific genes. Although flowering plant embryos escape such surveillance in vitro, embryo success in the seed often depends on a healthy endosperm - a nutritive tissue that is produced by a second fertilization event in which maternal and paternal gene contributions can be monitored immediately after fertilization and throughout development.
引用
收藏
页码:369 / 379
页数:11
相关论文
共 50 条
  • [31] Life cycle pollution exergy assessment of power plant
    Tian, ZH
    Yue, YK
    Chen, QL
    Hua, B
    ENERGY-EFFICIENT, COST-EFFECTIVE AND ENVIRONMENTALLY-SUSTAINABLE SYSTEMS AND PROCESSES, VOLS 1-3, 2004, : 979 - 986
  • [32] Managing a step based process plant life cycle
    Hawtin, JW
    Chung, PWH
    1997 JUBILEE RESEARCH EVENT, VOLS 1 AND 2, 1997, : 749 - 752
  • [33] Impact of mechanical stimulation on the life cycle of horticultural plant
    Zhengguang Liu
    Tobi Fadiji
    Jun Yang
    Zhiguo Li
    Fideline Tchuenbou-Magaia
    Horticultural Plant Journal, 2023, 9 (03) : 381 - 394
  • [34] Plant Refurbishment Options Based on the Life Cycle Assessment
    Tomlinson, Stuart
    Wang, Chang J.
    Morgan, Colin
    E-ENGINEERING & DIGITAL ENTERPRISE TECHNOLOGY VII, PTS 1 AND 2, 2009, 16-19 : 1091 - 1095
  • [35] Reduce engineering rework, plant life cycle costs
    Brand, DM
    Rensink, HJT
    HYDROCARBON PROCESSING, 2002, 81 (12): : 41 - +
  • [36] The life cycle of cyclotides: biosynthesis and turnover in plant cells
    Blazej Slazak
    Tobias Haugmo
    Bogna Badyra
    Ulf Göransson
    Plant Cell Reports, 2020, 39 : 1359 - 1367
  • [37] TOTAL LIFE-CYCLE COSTS OF PLANT AND EQUIPMENT
    FINLEY, F
    PROCESS TECHNOLOGY, 1973, 18 (4-5): : 177 - 180
  • [38] The cytoskeleton and spatial control of cytokinesis in the plant life cycle
    R. C. Brown
    B. E. Lemmon
    Protoplasma, 2001, 215 : 35 - 49
  • [39] The life cycle of cyclotides: biosynthesis and turnover in plant cells
    Slazak, Blazej
    Haugmo, Tobias
    Badyra, Bogna
    Goransson, Ulf
    PLANT CELL REPORTS, 2020, 39 (10) : 1359 - 1367
  • [40] Life cycle assessment of a cement plant in Naypyitaw, Myanmar
    Thwe, Ei
    Khatiwada, Dilip
    Gasparatos, Alexandros
    CLEANER ENVIRONMENTAL SYSTEMS, 2021, 2